Title :
Truncation-Error Reduction in Spherical Near-Field Scanning Using Slepian Sequences: Formulation for Scalar Waves
Author :
Kim, Kristopher T.
Author_Institution :
Sensors Directorate, Electromagn. Div., Air Force Res. Lab., Hanscom AFB, MA, USA
Abstract :
We discuss the error that results when the far field is reconstructed from spatially truncated near-field samples and present an effective mitigation technique based on the Slepian sequence for acoustic spherical near-field scanning. We show that the truncation error is inevitable whenever the far field is reconstructed using the classical near-field-to-far-field transformation. After discussing the Slepian sequence for a truncated spherical surface and its analytic and numerical properties, we apply it to expand truncated NF samples and derive the near-field-to-far-field transformation of the resulting expansion coefficients, from which the far field can be computed. We demonstrate the efficacy of this transformation by applying it to near-field scanning for bistatic scattering from a sphere and radiation from a current distribution.
Keywords :
acoustic field; antenna radiation patterns; electromagnetic wave scattering; Slepian sequences; acoustic spherical near-field scanning; antenna measurement; bistatic scattering; far field reconstruction; scalar waves; spatially truncated near-field samples; truncation error reduction; Antenna measurements; Finite wordlength effects; Government; Noise measurement; Probes; Scattering; Surface waves; Antenna measurement; Slepian sequence; bistatic scattering; near-field scanning; near-field-to-far-field transformation; truncation error;
Journal_Title :
Antennas and Propagation, IEEE Transactions on
DOI :
10.1109/TAP.2011.2158968